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脱氢表雄酮及其7-羟基化代谢产物不会干扰糖皮质激素受体的反式激活和细胞转运。

Dehydroepiandrosterone and its 7-hydroxylated metabolites do not interfere with the transactivation and cellular trafficking of the glucocorticoid receptor.

作者信息

Muller Caroline, Cluzeaud Françoise, Pinon Gregory M, Rafestin-Oblin Marie-Edith, Morfin Robert

机构信息

Laboratoire de Biotechnologie, EA-3199, Conservatoire National des Arts et Métiers, 2 rue Conté, 75003 Paris, France.

出版信息

J Steroid Biochem Mol Biol. 2004 Dec;92(5):469-76. doi: 10.1016/j.jsbmb.2004.10.014. Epub 2004 Dec 19.

Abstract

The human brain is a target tissue for glucocorticoids (GC). Dehydroepiandrosterone (DHEA) is a neurosteroid produced in the brain where it is transformed into 7alpha-hydroxy-DHEA and 7beta-hydroxy-DHEA. The antiglucocorticoid effects of both 7-hydroxylated metabolites have been investigated with evidence in mice that neither form of DHEA interfered with the binding of GC to its glucocorticoid receptor (GR), but contributed to a decreased nuclear uptake of the activated GR. Our objective was to use COS-7 cell culture to research DHEA, 7alpha-hydroxy-DHEA and 7beta-hydroxy-DHEA interferences with GR trafficking. These cells did not carry out the 7alpha-hydroxylation of DHEA and the oxidation of cortisol into cortisone. The cDNA of the human GR was inserted into pcDNA3 for a transient transfection of COS-7 cells. Human GR transactivation activity was measured from a luciferase-MMTV reporter gene. The transfected COS-7 cells were cultured using 10(-12) to 10(-5) M dexamethasone (DEX) or cortisol, which triggered the reporter expression. Treatment with 10(-12) to 10(-5) M DHEA, 7alpha-hydroxy-DHEA and 7beta-hydroxy-DHEA caused no change in the GC-induced GR transactivation. A reconstruction of the process associated EGFP to the human GR cDNA. Confocal microscopic examination of COS-7 cells transiently expressing the fusion protein EGFP-GR showed nuclear fluorescence 60 min after incubation with 10(-8) M DEX or cortisol. The addition of 10(-5) M DHEA, 7alpha-hydroxy-DHEA or 7beta-hydroxy-DHEA did not change its kinesis and intensity. These results contribute to the knowledge of DHEA, 7alpha-hydroxy-DHEA and 7beta-hydroxy-DHEA, in relation to antiglucocorticoid activity. We conclude that direct interference with GR trafficking can be discounted in the case of these hormones, therefore proposing new possibilities of investigation.

摘要

人类大脑是糖皮质激素(GC)的靶组织。脱氢表雄酮(DHEA)是一种在大脑中产生的神经甾体,在大脑中它会转化为7α-羟基-DHEA和7β-羟基-DHEA。已对这两种7-羟基化代谢产物的抗糖皮质激素作用进行了研究,在小鼠中有证据表明,两种形式的DHEA均不干扰GC与其糖皮质激素受体(GR)的结合,但会导致活化的GR的核摄取减少。我们的目标是利用COS-7细胞培养来研究DHEA、7α-羟基-DHEA和7β-羟基-DHEA对GR转运的干扰。这些细胞不会将DHEA进行7α-羟基化,也不会将皮质醇氧化为可的松。将人类GR的cDNA插入pcDNA3中,用于COS-7细胞的瞬时转染。通过荧光素酶-MMTV报告基因来检测人类GR的反式激活活性。使用10⁻¹²至10⁻⁵ M的地塞米松(DEX)或皮质醇培养转染后的COS-7细胞,这会触发报告基因的表达。用10⁻¹²至10⁻⁵ M的DHEA、7α-羟基-DHEA和7β-羟基-DHEA处理不会改变GC诱导的GR反式激活。将与增强绿色荧光蛋白(EGFP)相关的过程重建到人类GR cDNA上。共聚焦显微镜检查瞬时表达融合蛋白EGFP-GR的COS-7细胞,在与10⁻⁸ M DEX或皮质醇孵育60分钟后显示出核荧光。添加10⁻⁵ M的DHEA、7α-羟基-DHEA或7β-羟基-DHEA不会改变其运动和强度。这些结果有助于了解DHEA、7α-羟基-DHEA和7β-羟基-DHEA与抗糖皮质激素活性的关系。我们得出结论,在这些激素的情况下,可以排除对GR转运的直接干扰,因此提出了新的研究可能性。

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